Smeekens S P, Romano L J
Nucleic Acids Res. 1986 Mar 25;14(6):2811-27. doi: 10.1093/nar/14.6.2811.
T7 RNA polymerase plays an important role in both the transcription and replication of bacteriophage T7. In this study we have used a nitrocellulose filter binding assay to examine the binding properties of the T7 RNA polymerase with T7 promoters cloned into plasmid DNAs. Promoter-specific binding was shown to be relatively insensitive to variations in the ionic strength of the incubation solution but dependent on the helical structure of the DNA. On the other hand, nonpromoter interior-site binding was independent of the superhelicity of the DNA but extremely sensitive to changes in the ionic strength. These results suggest that nonspecific binding results from ionic interactions between positively charged residues of the polymerase and the polyanionic backbone of the DNA, whereas promoter-specific binding is dependent upon base-specific contacts within the promoter sequence. A comparison between the transcriptional activity and binding strengths of the RNA polymerase to specific promoters indicates little correlation between these two properties. This suggests that differential promoter binding does not represent a major mechanism for regulating transcription in bacteriophage T7. Instead, factors which influence the efficiency or rate of formation of the polymerase-promoter open complex are found to have the major role in determining transcriptional levels in this system.
T7 RNA聚合酶在噬菌体T7的转录和复制过程中都发挥着重要作用。在本研究中,我们使用了硝酸纤维素滤膜结合试验来检测T7 RNA聚合酶与克隆到质粒DNA中的T7启动子的结合特性。结果表明,启动子特异性结合对孵育溶液离子强度的变化相对不敏感,但依赖于DNA的螺旋结构。另一方面,非启动子内部位点的结合与DNA的超螺旋性无关,但对离子强度的变化极为敏感。这些结果表明,非特异性结合是由聚合酶带正电的残基与DNA的多阴离子主链之间的离子相互作用引起的,而启动子特异性结合则取决于启动子序列内的碱基特异性接触。RNA聚合酶对特定启动子的转录活性和结合强度之间的比较表明,这两种特性之间几乎没有相关性。这表明差异启动子结合并不是噬菌体T7中调节转录的主要机制。相反,发现影响聚合酶-启动子开放复合物形成效率或速率的因素在决定该系统中的转录水平方面起主要作用。